PhD
Lecturer
- 51cg
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- Email Address
- daniel.berg@abdn.ac.uk
- Telephone Number
- +44 (0)1224 437332
- Office Address
- School/Department
- School of Medicine, Medical Sciences and Nutrition



Biography
BSc in Biology, Uppsala University, Sweden (2006).
PhD. (2007-2012). Karolinska Institutet, Sweden. Studied brain regeneration in the Red-spotted Newt with Professor András Simon.
Postdoctoral Fellow. The Institute of Cell Engineering, School of Medicine, Johns Hopkins University, Baltimore, USA. (2012-2017). Studied adult neurogenesis under the supervision of Professor Hongjun Song (Funded by EMBO Long-Term Fellowships and Swedish research council international postdoc scholarship).
Research Associate, The Department of Neuroscience, Perelman School of Medicine, The University of Pennsylvania. (2017-2020). Continued to work with Professor Hongjun Song and studied the embryonic origin of the adult neural stem cells.
Latest Publications
Modeling maternal immune activation in 3D ex vivo human fetal brain cerebroids reveals IL-17A-driven disruption of cortical development
Nature NeuroscienceContributions to Journals: Articles- [ONLINE] DOI:
Deciphering cell-type-and temporally specific matrisome expression signatures in human cortical development and neurodevelopmental disorders via scRNA-seq meta-analysis
Nature Communications, vol. 16, 9907Contributions to Journals: Articles- [ONLINE] DOI:
- [OPEN ACCESS]
Deciphering Cell-Type and Temporal-Specific Matrisome Expression Signatures in Human Cortical Development and Neurodevelopmental Disorders via scRNA-Seq Meta-Analysis
Working Papers: Preprint Papers- [ONLINE] DOI:
- [OPEN ACCESS]
Advancing Insights into Virus-Induced Neurodevelopmental Disorders through Human Brain Organoid Modelling
Expert Reviews in Molecular Medicine, vol. 27, e1Contributions to Journals: Articles- [ONLINE] DOI:
- [OPEN ACCESS]
IL-17A Alters Human Cortical Development in a 3D Ex Vivo Model of Maternal Immune Activation
Working Papers: Preprint Papers- [ONLINE] DOI:
- [OPEN ACCESS]
- Research
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Research Overview
Daniel Berg received his biology undergraduate degree from Uppsala University in his hometown Uppsala, Sweden. For his PhD, he joined the lab of Dr. András Simon at the Karolinska Institute in Stockholm, Sweden, where he studied adult neurogenesis, i.e. the generation of functional neurons in the adult brain, using the Red-spotted Newt as a model organism. Unlike mammals, many amphibians are able to regenerate body parts, including their brain, after injury. In his PhD work, Daniel identified the neural stem cells that fuel regeneration in the newt brain and examined signaling pathways that control the proliferation of these stem cells.
The dentate gyrus of mouse hippocampus at postnatal day 7, blue is nuclei marker, green is progeny of HOPX-expressing progenitor cells, and red is marker of cell proliferation.
Daniel then joined the lab of Dr. Hongjun Song, first at the Johns Hopkins University, Baltimore and then at the University of Pennsylvania, Philadelphia as a postdoctoral fellow. In the Song lab Daniel studied adult neurogenesis in the mouse brain and attempted to identify the different types of neural stem cells that reside in the adult mammalian brain. He also examined the developmental origin of the adult neural stem cells.
Neural stem cells in the Dentate gyrus labeled at different stages of development.
As a lecturer at The Institute of Medical Sciences, Daniel plans to study neural stem cells, both during development and in adulthood using mammalian and amphibian model systems. The overall aim of his research will be to identify mechanisms to activate endogenous neural stem cells to repair the brain after injury and disease. He will use techniques such as lineage tracing, in vivo genetic manipulation and single cell RNA-sequencing.
Research Areas
Accepting PhDs
I am currently accepting PhDs in Biomedical Sciences.
Please get in touch if you would like to discuss your research ideas further.
Research Specialisms
- Developmental Biology
- Neuroscience
- Cell Biology
- Tissue Engineering and Regenerative Medicine
Our research specialisms are based on the Higher Education Classification of Subjects (HECoS) which is , published under the licence.
Collaborations
Dr Eunchai Kang, 51cg.
Professor Bettina Platt, 51cg.
Dr Cyrus David Mintz, Johns Hopkins University, Baltimore, USA.
- Teaching
- Publications
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Radial glial cells in the adult dentate gyrus: What are they and where do they come from?
F1000Research, vol. 7, 277Contributions to Journals: Review articles- [ONLINE] DOI:
- [OPEN ACCESS]
- [ONLINE]
Brain-Region-Specific Organoids Using Mini-bioreactors for Modeling ZIKV Exposure
Cell, vol. 165, no. 5, pp. 1238-1254Contributions to Journals: Articles- [ONLINE] DOI:
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Diversity of neural precursors in the adult mammalian brain
Cold Spring Harbor perspectives in biology, vol. 8, no. 4, a018838Contributions to Journals: Articles- [ONLINE] DOI:
- [ONLINE]
Environmental changes in oxygen tension reveal ROS-dependent neurogenesis and regeneration in the adult newt brain
eLife, vol. 4, e08422Contributions to Journals: Articles- [ONLINE] DOI:
- [OPEN ACCESS]
- [ONLINE]
Single-Cell RNA-Seq with Waterfall Reveals Molecular Cascades underlying Adult Neurogenesis
Cell Stem Cell, vol. 17, no. 3, pp. 360-372Contributions to Journals: Articles- [ONLINE] DOI:
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Tbr2-expressing intermediate progenitor cells in the adult mouse hippocampus are unipotent neuronal precursors with limited amplification capacity under homeostasis
Frontiers in Biology, vol. 10, no. 3, pp. 262-271Contributions to Journals: Articles- [ONLINE] DOI:
- [ONLINE]
Progenitor cell dynamics in the newt telencephalon during homeostasis and neuronal regeneration
Stem Cell Reports, vol. 2, no. 4, pp. 507-519Contributions to Journals: Articles- [ONLINE] DOI:
- [OPEN ACCESS]
- [ONLINE]
Neurotransmitter-mediated control of neurogenesis in the adult vertebrate brain
Development (Cambridge), vol. 140, no. 12, pp. 2548-2561Contributions to Journals: Review articles- [ONLINE] DOI:
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Microglia activation during neuroregeneration in the adult vertebrate brain
Neuroscience Letters, vol. 497, no. 1, pp. 11-16Contributions to Journals: Articles- [ONLINE] DOI:
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Dopamine controls neurogenesis in the adult salamander midbrain in homeostasis and during regeneration of dopamine neurons
Cell Stem Cell, vol. 8, no. 4, pp. 426-433Contributions to Journals: Articles- [ONLINE] DOI:
- [ONLINE]